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BET Inhibition Sensitizes Immunologically Cold Rb-Deficient Prostate Cancer to Immune Checkpoint Blockade
Brian M Olson1,2, Kiranj Chaudagar2, Riyue Bao2,3,4,5
1Department of Hematology and Medical Oncology, Emory University, Atlanta, Georgia.
Abstract:
Non-T-cell-inflamed immunologically "cold" tumor microenvironments (TME) are associated with poor responsiveness to immune checkpoint blockade (ICB) and can be sculpted by tumor cell genomics. Here, we evaluated how retinoblastoma (Rb) tumor-suppressor loss-of-function (LOF), one of the most frequent alterations in human cancer and associated with lineage plasticity, poor prognosis, and therapeutic outcomes, alters the TME, and whether therapeutic strategies targeting the molecular consequences of Rb loss enhance ICB efficacy. We performed bioinformatics analysis to elucidate the impact of endogenous Rb LOF on the immune TME in human primary and metastatic tumors. Next, we used isogenic murine models of Rb-deficient prostate cancer for in vitro and in vivo mechanistic studies to examine how Rb loss and bromodomain and extraterminal (BET) domain inhibition (BETi) reprograms the immune landscape, and evaluated in vivo therapeutic efficacy of BETi, singly and in combination with ICB and androgen deprivation therapy. Rb loss was enriched in non-T-cell-inflamed tumors, and Rb-deficient murine tumors demonstrated decreased immune infiltration in vivo. The BETi JQ1 increased immune infiltration into the TME through enhanced tumor cell STING/NF-κB activation and type I IFN signaling within tumor cells, resulting in differential macrophage and T-cell-mediated tumor growth inhibition and sensitization of Rb-deficient prostate cancer to ICB. BETi can reprogram the immunologically cold Rb-deficient TME via STING/NF-κB/IFN signaling to sensitize Rb-deficient prostate cancer to ICB. These data provide the mechanistic rationale to test combinations of BETi and ICB in clinical trials of Rb-deficient prostate cancer.
Insights
Retinoblastoma (Rb) loss creates "cold" tumors resistant to immune checkpoint blockade (ICB). Bromodomain and extraterminal (BET) domain inhibitors (BETi) enhance immune cell infiltration, sensitizing Rb-deficient prostate cancer to ICB therapy.
Area of Science:
- Oncology
- Immunology
- Cancer Genomics
Background:
- Non-T-cell-inflamed "cold" tumor microenvironments (TME) limit immune checkpoint blockade (ICB) efficacy.
- Loss-of-function (LOF) in the retinoblastoma (Rb) tumor suppressor is common in cancer, linked to poor prognosis and treatment outcomes.
- Rb LOF influences tumor cell plasticity and the TME, impacting therapeutic responses.
Purpose of the Study:
- To investigate how Rb LOF affects the TME and ICB responsiveness.
- To evaluate therapeutic strategies targeting molecular consequences of Rb loss to enhance ICB efficacy.
- To explore the role of bromodomain and extraterminal (BET) domain inhibition (BETi) in reprogramming the TME.
Main Methods:
- Bioinformatics analysis of human tumors to assess Rb LOF impact on immune TME.
- Isogenic murine models of Rb-deficient prostate cancer for in vitro and in vivo studies.
- Evaluation of BETi (JQ1), ICB, and androgen deprivation therapy efficacy in combination and alone.
Main Results:
- Rb LOF was associated with non-T-cell-inflamed tumors and reduced immune infiltration.
- BETi JQ1 increased immune cell infiltration by activating tumor cell STING/NF-κB and type I IFN signaling.
- BETi sensitized Rb-deficient prostate cancer to ICB, mediated by macrophages and T-cells.
Conclusions:
- BET inhibition can reprogram the "cold" TME in Rb-deficient tumors.
- Activation of STING/NF-κB/IFN signaling by BETi enhances ICB efficacy in Rb-deficient prostate cancer.
- Combination therapy of BETi and ICB warrants clinical investigation for Rb-deficient prostate cancer.
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